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Approach to Formation of Multifunctional Polyester Particles in Controlled Nanoscopic Dimensions

机译:控制纳米尺寸的多功能聚酯颗粒的形成方法

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We present the synthesis of discrete functionalized polyester nanoparticles in selected nanoscale size dimensions via a controlled intermolecular chain cross-linking process. The novel technique involves the controlled coupling of epoxide functionalized polyesters with 2,2'-(ethylenedioxy)bis(ethylamine) to give well-defined nanoparticles with narrow size distribution and selected nanoscopic size dimensions. Diverse functionalized polyesters, synthesized with pendant functionalities via ring-opening copolymerization of (δ-valerolactone with α-allyl-δ-valerolactone, a-propargyl-α-valerolactone and 2-oxepane-1,5-dione, were prepared as linear precursors which facilitated 3-D nanoparticles with functionalities such as amines, keto groups, and alkynes for post modification reactions. We found that the nanoparticle formation and the control over the nanoscopic dimension is primarily influenced by the degree of the epoxide entity implemented in the precursor polymers and the amount of 2,2'-(ethylenedioxy)bis(ethylamine) as cross-linking reagent. The other functionalities in the linear polyester do not participate in the nanoparticle formation and particles with defined functionalities can be prepared from batches of identical linear polymers containing various functionalities or by mixing different polyester materials to achieve controlled amounts of specific functional groups. The utilization of integrated functionalities was demonstrated in one post-modification reaction with N-Boc-ethylenediamine via reductive amination. This work describes the development of a novel methodology to prepare functionalized well-defined 3-D nanoparticle polyester materials in targeted nanoscopic ranges with amorphous morphologies or tailored crystallinities that offer a multitude of utilizations as a result of their unique properties and control in preparation.
机译:我们目前通过控制的分子间链交联过程,在选定的纳米级尺寸尺寸中合成离散的功能化聚酯纳米颗粒。该新技术涉及将环氧官能化的聚酯与2,2'-(乙二氧基)双(乙胺)进行受控偶联,从而得到定义明确的纳米粒子,其具有狭窄的尺寸分布和选定的纳米尺寸。通过(δ-戊内酯与α-烯丙基-δ-戊内酯,α-炔丙基-α-戊内酯和2-氧杂环戊烷-1,5-二酮的开环共聚合成具有侧链官能团的多元官能化聚酯作为线性前体它促进了具有胺,酮基和炔烃等功能的3-D纳米粒子的后修饰反应,我们发现纳米粒子的形成和对纳米尺寸的控制主要受前体聚合物中环氧化物实体的程度的影响线性聚酯中的其他官能团不参与纳米颗粒的形成,可以从一批相同的线性聚合物中制备出具有确定的官能度的颗粒,并添加2,2'-(乙二氧基)双(乙胺)作为交联剂。包含各种功能或通过混合不同的聚酯材料来控制特定数量的特定官能团。通过还原胺化,在与N-Boc-乙二胺进行的后修饰反应中证明了f的集成功能。这项工作描述了一种新型方法的发展,该方法可制备具有目标形态的具有非晶态形态或特制结晶度的目标纳米范围内的功能明确的3-D纳米粒子聚酯材料,这些材料由于其独特的性能和制备控制而具有多种用途。

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